Hao Shang | Energy Storage | Best Researcher Award
Dr. Hao Shang, Hubei University of Automotive Technology, China.
Dr. Hao Shang 👨🔬 is a lecturer at the Hubei University of Automotive Technology 🚗, affiliated with the Hubei Key Laboratory of Energy Storage and Power Battery ⚡. He holds a Ph.D. in Physical Chemistry from Wuhan University 🏫, with research focused on water electrolysis 💧. With experience in research and teaching, Dr. Shang has contributed to hydrogen production technologies and fuel cell catalysts 🧪. He has published 7 scientific papers 📚, owns 5 patents (4 domestic, 1 international) 🧾, and is actively involved in multiple funded research projects 💼. He also teaches courses in physics and energy materials 📖.
Publication Profiles
Orcid
Scopus
Education & Experience
🎓 Education:
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🧪 Ph.D. in Physical Chemistry
📍 Wuhan University, Wuhan, China (Sep 2015 – Dec 2020)
🔬 Research: Water Electrolysis -
⚗️ M.S. in Physical Chemistry
📍 Wuhan University, Wuhan, China (Sep 2012 – Jun 2015)
🔬 Research: Electro-Catalysis -
🧫 B.S. in Chemistry
📍 Zhengzhou University, Wuhan, China (Sep 2006 – Jun 2010)
💼 Occupational History:
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🔬 2010–2011: Research Assistant, Shenzhen Institute of Peking University
➤ Focus: Drug synthesis design -
⚡ 2021–2023: Assistant Researcher, Tianjin Research Institute for Water Transport Engineering, M.O.T
➤ Focus: Hydrogen production via electrolysis -
👨🏫 2023–Present: Lecturer, Hubei University of Automotive Technology
➤ Teaching and research
Summary Suitability For The Award
Dr. Hao Shang, currently serving as a Lecturer at the School of New Energy, Hubei University of Automotive Technology, is an excellent candidate for the Best Researcher Award in recognition of his cutting-edge research in hydrogen production, electrocatalysis, and energy materials. With a Ph.D. and M.S. in Physical Chemistry from Wuhan University, and over a decade of experience spanning academia and applied research institutes, Dr. Shang has consistently demonstrated scientific rigor and innovation across multiple areas of clean energy technologies.
Professional Development
Dr. Hao Shang has steadily advanced in the field of physical chemistry and clean energy technology 🌱. With foundational work in drug synthesis 🧪, he transitioned to cutting-edge research in hydrogen production and electrolysis ⚡. Currently a lecturer and researcher, Dr. Shang guides students and participates in advanced projects at the Hubei Key Laboratory of Energy Storage 🔋. His hands-on experience spans catalyst development, lithium battery recycling 🔁, and green energy systems 🌍. His efforts are supported by active research funding 💼 and recognized through publications and patents 📄. He maintains strong academic and industry collaborations 🤝.
Research Focus
Dr. Hao Shang’s research focuses on sustainable energy technologies 🌿, particularly in hydrogen production and fuel cells 🔬. He works extensively on catalysts for solid polymer electrolyte (SPE) water electrolysis 💧, as well as for hydrogen and methanol fuel cells 🔋. His innovative research also extends to lithium-ion battery recycling technologies 🔁, aiming to improve resource efficiency and reduce environmental impact 🌎. Dr. Shang integrates physical chemistry with energy materials science, bridging academia and industry to contribute to future clean energy solutions 🔧. His goal is to develop cost-effective, high-performance, and eco-friendly energy systems ⚙️.
Awards & Honors
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📄 Published 7 peer-reviewed journal articles in reputable international journals
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🧾 Holder of 5 patents: 4 domestic 🇨🇳, 1 international 🌐
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💼 Participated in 3 ongoing research projects with a combined budget over 300,000 yuan 💰
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✅ Successfully completed 1 research project
Publication Top Noted
📘 Improving MoS₂ hydrogen evolution performance in anion exchange membrane water electrolysis by using LaNi₅ alloy as a co-catalyst (2025) — Journal of Alloys and Compounds |🧪⚡🔋
📘 Multiple Yu–Shiba–Rusinov bound states in a molecular dimer device: Excited-state and normal quantum phase transitions (2025) — Chinese Journal of Physics | 🔬⚛️🧲
is a physicist and researcher at the Laboratory of Spectroscopic and Optical Characterizations of Materials (LASCOM), Faculty of Sciences, Sfax, Tunisia
. With an H-index of 13 and over 497 citations
, he is recognized for his contributions to hybrid organic-inorganic materials, perovskites, and energy-focused ceramics
. A university lecturer since 2015, Dr. Ben Bechir has mentored numerous students and coordinated research programs
. His expertise extends to optical, thermodynamic, and
. Passionate about advancing scientific knowledge, he is a dedicated educator and an innovator in materials science research
.
Lecturer: Faculty of Sciences, Gafsa, Tunisia (2015–Present)
. As a lecturer at the Faculty of Sciences, Gafsa, he delivers diverse courses, including optics, astrophysics, and
. His academic leadership includes serving as the coordinator for the Master of Research in Physics program since 2022
. He actively mentors students in cutting-edge research on hybrid perovskites and energy systems
. His work bridges academia and practical applications, contributing to renewable energy innovations and sustainable material development
. His dedication to teaching and research exemplifies his commitment to scientific excellence
. He investigates materials like halide-based perovskites and energy-efficient ceramics for photovoltaic and optoelectronic applications
. Through innovative synthesis and characterization techniques, his research aims to enhance energy systems’ efficiency and environmental compatibility
. Dr. Ben Bechir’s commitment to exploring advanced materials positions him as a leader in renewable energy and materials science
.
From Molecular Salt to Layered Network: Cation-Driven Tuning of Band Gap, Structure, and Charge Transport in A3Bi2I9 (A = Cs, Rb) Perovskites (2024, RSC Advances, cited by: 1)
Vibrational Spectroscopic, Optical Properties, and Electrical Conduction Mechanism of Lead-Free Perovskite Cs2ZnCl4 (2024, Chemistry Africa)
Structural, Morphological, Electrical, and Dielectric Properties of Na2Cu5(Si2O7)2 for ASSIBs (2024, RSC Advances, cited by: 2)
Investigation of Optical, Dielectric, and Charge Transfer Properties in Lead-Free Double Perovskite Cs2MSbBr6 (M = Cu, Ag) (2024, Ionics, cited by: 4)